A sheet conveying apparatus, including: a base body having a conveyor surface; a separating roller configured to rotate about a first rotation axis parallel to a width direction of the conveyor surface and to convey a sheet downstream in a conveyance direction orthogonal to the width direction; a separating piece opposed to the separating roller and configured to cooperate with the separating roller to separate sheets being conveyed one by one; an attachment member removably attached to the base body at a position at which the attachment member is opposed to the separating roller, so as to form a part of the conveyor surface; a holder holding the separating piece and supported by the attachment member so as to be movable toward and away from the separating roller; and a first urging member provided between the attachment member and the holder for urging the separating piece toward the separating roller.
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18. A sheet conveying apparatus, comprising:
a base body having a conveyor surface configured to convey a sheet thereon;
a separating roller configured to rotate about a first rotation axis parallel to a width direction of the conveyor surface and to convey the sheet downstream in a conveyance direction orthogonal to the width direction;
a separating piece located so as to be opposed to the separating roller and configured to cooperate with the separating roller to separate sheets being conveyed one by one;
an attachment member removably attached to the base body at a position at which the attachment member is opposed to the separating roller, so as to form a part of the conveyor surface;
a holder holding the separating piece and supported by the attachment member so as to be movable toward and away from the separating roller;
a first urging member provided between the attachment member and the holder for urging the separating piece toward the separating roller; and
a film supported by the attachment member on an upstream side, in the conveyance direction, of a nip position at which the separating roller and the separating piece nip the sheet, the film extending downstream in the conveyance direction so as to approach the separating roller.
1. A sheet conveying apparatus, comprising:
a base body having a conveyor surface configured to convey a sheet thereon;
a separating roller configured to rotate about a first rotation axis parallel to a width direction of the conveyor surface and to convey the sheet downstream in a conveyance direction orthogonal to the width direction;
a separating piece located so as to be opposed to the separating roller and configured to cooperate with the separating roller to separate sheets being conveyed one by one;
an attachment member removably attached to the base body at a position at which the attachment member is opposed to the separating roller, so as to form a part of the conveyor surface;
a holder holding the separating piece and supported by the attachment member so as to be movable toward and away from the separating roller;
a first urging member provided between the attachment member and the holder for urging the separating piece toward the separating roller;
a roller held by the attachment member so as to be movable toward and away from the separating roller and so as to be rotatable about a second rotation axis parallel to the width direction; and
a second urging member provided between the attachment member and the roller for urging the roller toward the separating roller.
11. A sheet conveying apparatus, comprising:
a base body having a conveyor surface configured to convey a sheet thereon;
a separating roller configured to rotate about a first rotation axis parallel to a width direction of the conveyor surface and to convey the sheet downstream in a conveyance direction orthogonal to the width direction;
a separating piece located so as to be opposed to the separating roller and configured to cooperate with the separating roller to separate sheets being conveyed one by one;
an attachment member removably attached to the base body at a position at which the attachment member is opposed to the separating roller, so as to form a part of the conveyor surface;
a holder holding the separating piece and supported by the attachment member so as to be movable toward and away from the separating roller;
a first urging member provided between the attachment member and the holder for urging the separating piece toward the separating roller;
a pair of arms supported by the attachment member so as to be movable toward and away from the separating roller, the pair of arms being disposed such that one of the pair of arms is adjacent to one of widthwise opposite end portions of the separating piece while the other of the pair of arms is adjacent to the other of the widthwise opposite end portions of the separating piece and such that the pair of arms are located upstream of a nip position in the conveyance direction at which the separating roller and the separating piece nip the sheet; and
a third urging member provided between the attachment member and the pair of arms for urging the pair of arms toward the separating roller.
2. The sheet conveying apparatus according to
wherein the second rotation axis is located upstream of a nip position in the conveyance direction at which the separating roller and the separating piece nip the sheet, and
wherein the roller has an overlapping portion overlapping the separating piece as viewed in the width direction.
3. The sheet conveying apparatus according to
wherein one of the pair of rollers is disposed adjacent to one of widthwise opposite end portions of the separating piece while the other of the pair of rollers is disposed adjacent to the other of the widthwise opposite end portions of the separating piece.
4. The sheet conveying apparatus according to
5. The sheet conveying apparatus according to
a pair of arms supported by the attachment member so as to be movable toward and away from the separating roller, the pair of arms being disposed such that one of the pair of arms is adjacent to one of widthwise opposite end portions of the separating piece while the other of the pair of arms is adjacent to the other of the widthwise opposite end portions of the separating piece and such that the pair of arms are located upstream of a nip position in the conveyance direction at which the separating roller and the separating piece nip the sheet; and
a third urging member provided between the attachment member and the pair of arms for urging the pair of arms toward the separating roller,
wherein the first urging member, the second urging member, and the third urging member are located at a central portion of the attachment member in the width direction so as to be arranged along the conveyance direction.
6. The sheet conveying apparatus according to
wherein the holder is supported by the attachment member so as to be pivotable about a pivot axis parallel to the width direction,
wherein the attachment member has a shaft defining the pivot axis,
wherein the holder has a shaft hole through which the shaft passes,
wherein the shaft has a pair of flat surfaces formed on an outer circumferential surface thereof, the pair of flat surfaces being opposed to each other with the pivot axis interposed therebetween, and
wherein the shaft hole has a cutout having a dimension larger than a distance between the pair of flat surfaces and smaller than an outer diameter of the shaft.
7. The sheet conveying apparatus according to
8. The sheet conveying apparatus according to
wherein the base body includes a first body portion forming the conveyor surface and a second body portion opposed to the separating roller with the first body portion interposed therebetween,
wherein the attachment member is removably attached to the second body portion, and
wherein the separating roller is supported by the second body portion.
9. The sheet conveying apparatus according to
10. The sheet conveying apparatus according to
12. The sheet conveying apparatus according to
13. The sheet conveying apparatus according to
wherein the holder is supported by the attachment member so as to be pivotable about a pivot axis parallel to the width direction,
wherein the attachment member has a shaft defining the pivot axis,
wherein the holder has a shaft hole through which the shaft passes,
wherein the shaft has a pair of flat surfaces formed on an outer circumferential surface thereof, the pair of flat surfaces being opposed to each other with the pivot axis interposed therebetween, and
wherein the shaft hole has a cutout having a dimension larger than a distance between the pair of flat surfaces and smaller than an outer diameter of the shaft.
14. The sheet conveying apparatus according to
15. The sheet conveying apparatus according to
wherein the base body includes a first body portion forming the conveyor surface and a second body portion opposed to the separating roller with the first body portion interposed therebetween,
wherein the attachment member is removably attached to the second body portion, and
wherein the separating roller is supported by the second body portion.
16. The sheet conveying apparatus according to
17. The sheet conveying apparatus according to
19. The sheet conveying apparatus according to
wherein the holder is supported by the attachment member so as to be pivotable about a pivot axis parallel to the width direction,
wherein the attachment member has a shaft defining the pivot axis,
wherein the holder has a shaft hole through which the shaft passes,
wherein the shaft has a pair of flat surfaces formed on an outer circumferential surface thereof, the pair of flat surfaces being opposed to each other with the pivot axis interposed therebetween, and
wherein the shaft hole has a cutout having a dimension larger than a distance between the pair of flat surfaces and smaller than an outer diameter of the shaft.
20. The sheet conveying apparatus according to
21. The sheet conveying apparatus according to
wherein the base body includes a first body portion forming the conveyor surface and a second body portion opposed to the separating roller with the first body portion interposed therebetween,
wherein the attachment member is removably attached to the second body portion, and
wherein the separating roller is supported by the second body portion.
22. The sheet conveying apparatus according to
23. The sheet conveying apparatus according to
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The present application claims priority from Japanese Patent Application No. 2015-015989, which was filed on Jan. 29, 2015, the disclosure of which is herein incorporated by reference in its entirety.
Technical Field
The following disclosure relates to a sheet conveying apparatus.
Description of the Related Art
There has been known a sheet conveying apparatus having a conveying frame, a separating roller functioning also as a supply roller, a separation piece, a holder, and a spring.
The conveying frame forms a conveying surface on which a sheet is conveyed. The separating roller is disposed above the conveying surface. The separating roller is configured to rotate about a rotation axis parallel to a width direction of the conveying surface for conveying the sheet downstream in a conveyance direction orthogonal to the width direction. The separation piece disposed so as to be opposed to the separating roller and cooperates with the separating roller to separate the sheets one by one. The holder holds the separation piece and is supported by the conveying frame so as to be movable toward and away from the separating roller. The spring is provided between the conveying frame and the holder for urging the separation piece toward the separating roller.
For replacing the separation piece with a new one in the known sheet conveying apparatus, the separation piece and the holder which have been used are removed from a base body of the apparatus. In this instance, the spring is kept held by the conveying frame without being removed. Subsequently, a new separation piece and a new holder are installed on the conveying frame.
When the new separation piece and the new holder are installed on the conveying frame in the known sheet conveying apparatus described above, the spring held by the conveying frame needs to be engaged with a predetermined portion of the holder. If the holder and the spring are positioned inappropriately relative to each other, a required urging force does not act between the separation piece and the separating roller, causing a risk of a decrease in sheet separating property. Thus, a certain degree of accuracy is required in maintenance work for replacing the separating piece in the conventional sheet conveying apparatus.
One aspect of the disclosure relates to a sheet conveying apparatus capable of simplifying maintenance work in relation to replacement of a separating piece.
In one aspect of the disclosure, a sheet conveying apparatus includes: a base body having a conveyor surface on which a sheet is conveyed; a separating roller configured to rotate about a first rotation axis parallel to a width direction of the conveyor surface and to convey the sheet downstream in a conveyance direction orthogonal to the width direction; a separating piece located so as to be opposed to the separating roller and configured to cooperate with the separating roller to separate sheets being conveyed one by one; an attachment member removably attached to the base body at a position at which the attachment member is opposed to the separating roller, so as to form a part of the conveyor surface; a holder holding the separating piece and supported by the attachment member so as to be movable toward and away from the separating roller; and a first urging member provided between the attachment member and the holder for urging the separating piece toward the separating roller.
The objects, features, advantages, and technical and industrial significance of the present disclosure will be better understood by reading the following detailed description of one embodiment, when considered in connection with the accompanying drawings, in which:
Hereinafter, there will be described one embodiment by reference to the drawings.
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An upper surface of the supply tray 91 is a flat surface inclined downward to the left. An upper surface of the supply tray 91 is continuous to an upper conveying surface 93A formed by the upper chute member 93 of the opening and closing portion 9. The upper conveying surface 93A is one example of “conveyor surface formed by the base body”. The width direction of the upper conveying surface 93A corresponds to the front-rear direction in the present embodiment.
As shown in
The sheets SH for which images have been read by the reading sensor 3S and which have been conveyed by the conveying unit 4 are discharged to the discharge tray 92.
As shown in
The conveyance direction in which the sheet SH is conveyed by the conveying unit 4 is the left direction in the upper leftward extending portion along the upper conveying surface 93A. The conveyance direction changes from the left direction to the right direction in the downwardly curved portion. The conveyance direction is the right direction in a lower portion of the conveyance path P1 which extends from the reading surface 82A to the discharge tray 92. The conveyance direction is orthogonal to the front-rear direction that coincides with the width direction of the upper conveying surface 93A.
The upper chute member 93 and the lower chute member 96 are mounted onto components of the discharge tray 92 and components that constitute side walls of the opening and closing portion 9. The lower chute member 96 is opposed to the upper chute member 93 from below. In other words, the lower chute member 96 and a separating roller 42 later described are opposed to each other with the upper chute member 93 interposed therebetween.
As shown in
As shown in
The conveying unit 4 includes a supply roller 41, the separating roller 42, and a roller holder 42F.
The separating roller 42 is disposed above and opposed to the upper conveying surface 93A of the upper chute member 93. Specifically, the separating roller 42 is opposed, from above, to a downstream portion of the upper conveying surface 93A located downstream of the bent portion 93K in the conveyance direction. The separating roller 42 is mounted on a drive shaft 42S. The drive shaft 42S is a cylindrical shaft body having, as a center axis, a first rotation axis X42 extending in the front-rear direction. The separating roller 42 rotates about the first rotation axis X42 together with the drive shaft 42S.
As shown in
As shown in
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When the drive shaft 42S is driven by a drive source (not shown) and is rotated, the supply roller 41 and the separating roller 42 rotate in synchronization with each other, so that the supply roller 41 gives a conveyance force to an uppermost one of the sheets SH supported on the supply tray 91 and sends the uppermost sheet SH toward the separating roller 42. The separating roller 42 rotates while contacting the sheet SH supplied from the supply tray 91 and thereby conveys the sheet SH to the left, namely, toward the downstream side in the conveyance direction, along the upper portion of the conveyance path P1.
As shown in
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As shown in
The fit-in member 100 is one example of “attachment member”. The separating-piece holder 120 is one example of “holder”. The first compression coil spring 151 is one example of “first urging member”. The second compression coil spring 152 is one example of “second urging member”. The third compression coil spring 153 is one example of “third urging member”.
As shown in
The engaging recesses 111, 111 of the fit-in member 100 shown in
As shown in
As shown in
In the state in which the fit-in member 100 is attached to the lower chute member 96, the first upper surface 100R is opposed to the supply roller 41 from below and the second upper surface 100L is opposed to the separating roller 42 from below. The second upper surface 100L extends toward a downstream side of the separating roller 42 in the conveyance direction. In other words, the fit-in member 100 is removably attached to the base body 99 at a position at which the fit-in member 100 is opposed to the separating roller 42.
As shown in
As shown in
A separation-piece support surface 121A is formed at a left portion of the holder main body 121. The separation-piece support surface 121A is a flat surface that inclines upward to the left. A portion of the holder main body 121 located to the right of the separation-piece support surface 121A has a height dimension larger than the separation-piece support surface 121A, and two protrusions 121C, 121C protruding toward the separation-piece support surface 121A are formed so as to be arranged in the front-rear direction. The holder main body 121 extends rightward while being directed downward.
The protruding portions 122, 122 protrude rightward from a right end of the holder main body 121. The shaft hole portions 129, 129 are formed at right ends of the respective protruding portions 122, 122. Each of the shaft hole portions 129, 129 is provided with a cutout 129C.
As shown in
As shown in
The posture of the shaft hole portion 129 shown in
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The joint shaft 131 defines a second rotation axis X130 extending in the front-rear direction. As shown in
As shown in
The second compression coil spring 152 urges the rollers 130, 130 toward the separating roller 42 via the joint shaft 131. As shown in
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The third compression coil spring 153 urges the arms 140, 140 toward the separating roller 42 via the joint 141. As shown in
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The conveying unit 4 includes, in the downwardly curved portion of the conveyance path P1, a curved guide surface 45G, a curved guide surface 45H, a conveying roller 45, and a pinch roller 45P. The curved guide surface 45G and the curved guide surface 45H are opposed to each other with a predetermined spacing interposed therebetween. The curved guide surface 45G defines an outer surface of the downwardly curved portion of the conveyance path P1. The curved guide surface 45H defines an inner surface of the downwardly curved portion of the conveyance path P1. The conveying roller 45 and the pinch roller 45P nip the sheet SH conveyed by the conveying roller 44 and the pinch roller 44P, and convey the sheet SH toward the reading surface 82A.
The conveying unit 4 includes a pressing member 49 disposed above and opposed to the reading surface 82A. The pressing member 49 presses the upper surface of the sheet SH conveyed from the conveying roller 45 and brings the sheet SH into contact with the reading surface 82A.
The conveying unit 4 includes an output roller 48 and a pinch roller 48P in a portion of the conveyance path P1 which is located to the right of the pressing member 49 and which inclines upward. The output roller 48 and the pinch roller 48P face the discharge tray 92. The output roller 48 and the pinch roller 48P discharge, onto the discharge tray 92, the sheet SH which has passed over the reading surface 82A.
When the reading unit 3 reads an image on a document supported on the document support surface 81A, the scanning mechanism (not shown) of the reading unit 3 is operated so as to move the reading sensor 3S in the right-left direction between a position under the left edge of the document support surface 81A and a position under the right edge of the document support surface 81A. Thus, the reading sensor 3S reads the image on the document supported on the document support surface 81A. When the image reading is completed, the scanning mechanism moves the reading sensor 3S from a right end portion to a left end portion in the reading unit 3, so that the reading sensor 3S is moved back to its original position.
When the reading unit 3 reads an image on the sheet SH placed on the supply tray 91, the scanning mechanism is operated so as to stop the reading sensor 3S at the stationary reading position under the reading surface 82A. Thereafter, the conveying unit 4 successively conveys the sheets SH placed on the supply tray 91 in the conveyance path P1. In this instance, the sheets SH are separated one by one by the separating roller 42, the separating piece 43, the rollers 130, 130, the arms 140, 140, and the film 170. When the sheet SH passes over the reading sensor 3S located at the stationary reading position while contacting the reading surface 82A, the reading sensor 3S reads the image on the sheet SH passing over the reading sensor 3S. After the image reading, the sheet SH is discharged onto the discharge tray 92 by the output roller 48 and the pinch roller 48P.
In the image reading apparatus 1 constructed as described above, the fit-in member 100, the separating piece 43, the separating-piece holder 120, the first compression coil spring 151, the rollers 130, 130, the second compression coil spring 152, the arms 140, 140, the third compression coil spring 153, and the film 170 are formed as one unit assembly, as shown in
In replacing the separating piece 43 with new one, the fit-in member 100 is removed out of the fit-in space 94 of the base body 99, as shown in
Thus, the image reading apparatus 1 according to the embodiment allows easy serviceability. For instance, it is not needed to engage the first compression coil spring 151 with a predetermined portion of the separation-piece holder 120, as required in the conventional sheet conveying apparatus in maintenance work in relation to replacement of the separation piece. Further, the components such as the separating piece 43 can be replaced in a state in which the constituent components of the unit assembly, such as the first compression coil spring 151, are kept positioned properly in the unit assembly. This configuration prevents or reduces a trouble such as lowered sheet separating property caused by replacement of the separating piece 43.
According to the image reading apparatus 1, before the leading edge of the sheet SH to be supplied to the separating roller 42 is nipped by the separating roller 42 and the separating piece 43 at the nip position N1, the leading edge of the sheet SH is nipped by the separating roller 42 and the rollers 130, 130 at the roller contact position N2, as shown in
In the image reading apparatus 1, the rollers 130, 130 are disposed adjacent to one and the other of the widthwise opposite end portions of the separating piece 43 so as to sandwich the separating piece 43 therebetween in the front-rear direction, as shown in
In the image reading apparatus 1, the arms 140, 140 are disposed adjacent to one and the other of the widthwise opposite end portions of the separating piece 43 so as to sandwich the separating piece 43 therebetween in the front-rear direction, as shown in
In the image reading apparatus 1, the first compression coil spring 151, the second compression coil spring 152, and the third compression coil spring 153 are disposed at the central portion of the fit-in member 100 in the front-rear direction so as to be arranged along the conveyance direction, as shown in
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In the image reading apparatus 1, the engaging recesses 111, 111 of the fit-in member 100 shown in
While the embodiment of has been explained above, it is to be understood that the disclosure is not limited to the details of the illustrated embodiment, but may be embodied with various other changes and modifications, which may occur to those skilled in the art, without departing from the scope of the disclosure.
The rollers 130, 130 need not be held directly by the fit-in member 100. The rollers may be configured so as to be rotatably held by a roller holder which is movably held by the fit-in member and so as to be movable toward and away from the separating roller.
The disclosure is applicable to not only the image reading apparatus, but also an image forming apparatus, a copying machine, and other similar apparatus.
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Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Jan 29 2016 | Brother Kogyo Kabushiki Kaisha | (assignment on the face of the patent) | / | |||
Apr 15 2016 | OHTA, MASAHIKO | Brother Kogyo Kabushiki Kaisha | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 038581 | /0680 |
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